Title :
Exact stability analysis of second-order leader-follower consensus protocols with multiple time delays
Author :
Cepeda-Gomez, R. ; Olgac, Nejat
Author_Institution :
Electr. & Electron. Eng. Sch., Univ. Ind. de Santander, Bucaramanga, Colombia
Abstract :
An earlier investigation on leader-follower consensus protocols for double integrators with multiple time delays [1] is revisited in this paper from two completely different and novel perspectives. First, the crucial stability analysis of time delayed system is replaced with a recent technique called the Cluster Treatment of Characteristic Roots (CTCR). CTCR paradigm is pursued after a block-diagonalization (mode decoupling) transformation on the system. This treatment produces the unique exact and exhaustive stability tables for the dynamics in the space of the delays. Secondly, the novel concept of Spectral Delay Space is presented, as an overture to the CTCR for the determination of the needed potential stability crossing (switching) hypersurfaces in the delay space. Example cases are provided to display the strengths, efficiency and explicitness of this new stability analysis mechanism.
Keywords :
delays; multi-agent systems; multi-robot systems; protocols; stability; CTCR paradigm; block diagonalization transformation; cluster treatment of characteristic roots; crucial stability analysis; double integrators; exact stability analysis; mode decoupling transformation; multiple time delays; potential stability crossing hypersurfaces; second-order leader-follower consensus protocols; spectral delay space concept; stability tables; switching hypersurfaces; time delayed system; Delay; Delay effects; Eigenvalues and eigenfunctions; Equations; Kernel; Protocols; Stability analysis;
Conference_Titel :
Decision and Control (CDC), 2012 IEEE 51st Annual Conference on
Conference_Location :
Maui, HI
Print_ISBN :
978-1-4673-2065-8
Electronic_ISBN :
0743-1546
DOI :
10.1109/CDC.2012.6426438